Method for displaying images with electron emitting device

- Canon

A display device consisting of an electron-emitting device which is a laminate of an insulating layer and a pair of opposing electrodes formed on a planar substrate. A portion of the insulating layer is between the electrodes and a portion containing an electron emitting region in between one electrode and the substrate. Electrons are emitted from the electron emission region by a voltage to the electrodes, thereby stimulating a phosphorous to emitting light.

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Claims

1. A method for displaying images comprising the steps of:

(i) applying a first voltage to a surface of a fluorescent member;
(ii) applying a voltage pulse to wiring electrodes so as to cause emission of electrons from an electron emitting device;
(iii) applying a second voltage to modulating electrodes to control the emitted electrons, in either an ON state or an OFF state in accordance with information signals representing a line of an image to be displayed wherein the emitted electrons in the ON state impinge the fluorescent member; and
(iv) successively repeating the steps of (ii) through (iii) thereby forming a picture of an image on a display device;
wherein the display device comprises:
an electron-emitting device, comprising a laminate having an insulating layer disposed between opposing electrodes on a planar substrate, said insulating layer having an electron-emitting region spaced apart from said electrodes, wherein a first portion of said insulating layer is disposed between said opposing electrodes, wherein a second portion of said insulating layer is disposed between one of said electrodes and said planar substrate, said emitting region being disposed in said first portion of said insulating layer and wherein electrons are emitted form said electron-emitting region by applying a voltage to said electrodes; and
a phosphor, wherein said phosphor emits light by a stimulation of the electrons emitted from said electron-emitting device.

2. A method for displaying images comprising the steps of:

(i) applying a first voltage to a surface of a fluorescent member;
(ii) applying a voltage pulse to wiring electrodes so as to cause emission of electrons from an electron emitting device;
(iii) applying a second voltage to modulating electrodes to control the emitted electrons, in either an ON state or an OFF state in accordance with information signals representing a line of an image to be displayed wherein the emitted electrons in the ON state impinge the fluorescent member; and
(iv) successively repeating the steps of (ii) through (iii) thereby forming a picture of an image on a display device;
wherein the display device comprises:
an electron-emitting device, comprising a laminate having an insulating layer and a layer of an electron-emitting material disposed between opposing electrodes on a planar substrate, wherein said electron-emitting material is spaced apart from said electrode, wherein a first portion of said electron emitting material is disposed between said opposing electrodes wherein a second portion of said electron emitting material is disposed between one of said electrodes and said planar substrate, and wherein electrons are emitted by applying a voltage to said electrodes; and
a phosphor, wherein said phosphor emits light by a stimulation of the electrons emitted form said electron-emitting device.

3. A method for displaying images comprising the steps of:

(i) applying a first voltage to a surface of a fluorescent member;
(ii) applying a voltage pulse to wiring electrodes so as to cause emission of electrons from an electron emitting device;
(iii) applying a second voltage to modulating electrodes to control the emitted electrons, in either an ON state or an OFF state in accordance with information signals representing a line of an image to be displayed wherein the emitted electrons in the ON state impinge the fluorescent member; and
(iv) successively repeating the steps of (ii) through (iii) thereby forming a picture of an image on a display device;
wherein the display device comprises:
an electron-emitting device, comprising a laminate comprising an insulating layer having an electron-emitting material in a dispersed state and disposed between opposing electrodes on a planar substrate, wherein a first portion of said electron emitting material is disposed between said opposing electrodes wherein a second portion of said electron emitting material is disposed between one of said electrodes and said planar substrate, and wherein electrons are emitted by applying a voltage between said electrodes; and
a phosphor, wherein said phosphor emits light by a stimulation of the electrons emitted form said electron-emitting device.

4. A method for displaying images comprising the steps of:

(i) applying a first voltage to a surface of a fluorescent member;
(ii) applying a voltage pulse to wiring electrodes so as to cause emission of electrons from an electron emitting device;
(iii) applying a second voltage to modulating electrodes to control the emitted electrons, in either an ON state or an OFF state in accordance with information signals representing a line of an image to be displayed wherein the emitted electrons in the ON state impinge the fluorescent member; and
(iv) successively repeating the steps of (ii) through (iii) thereby forming a picture of an image on a display device;
wherein the display device comprises:
an electron-emitting device, comprising opposing electrodes, an insulating layer having a layer of an electron-emitting material between said opposing electrodes layer and being disposed on a planar substrate, wherein said an electron-emitting material is spaced apart from said electrodes, wherein a first portion of said electron emitting-material is disposed between said opposing electrodes, wherein a second portion of said electron-emitting material is disposed between one of said electrodes and said planar substrate, and wherein electrons are emitted by applying a voltage to said electrodes; and
a phosphor, wherein said phosphor emits light by a stimulation of the electrons emitted from said electron-emitting device.

5. A method for displaying images comprising the steps of:

(i) applying a first voltage to a surface of a fluorescent member;
(ii) applying a voltage pulse to wiring electrodes so as to cause emission of electrons from an electron emitting device;
(iii) applying a second voltage to modulating electrodes to control the emitted electrons, in either an ON state or an OFF state in accordance with information signals representing a line of an image to be displayed wherein the emitted electrons in the ON state impinge the fluorescent member; and
(iv) successively repeating the steps of (ii) through (iii) thereby forming a picture of an image on a display device;
wherein the display device comprises:
an electron-emitting device, comprising opposing electrodes, an insulating layer containing an electron-emitting material being disposed between said electrodes in a dispersed state on a planar substrate; wherein said an electron-emitting material is spaced apart from said electrodes, wherein a first portion of said electron emitting-material is disposed between said opposing electrodes, wherein a second portion of said electron-emitting material is disposed between one of said electrodes and said planar substrate, and wherein electrons are emitted by applying a voltage to said electrodes; and
a phosphor, wherein said phosphor emits light by a stimulation of the electrons emitted from said electron-emitting device.

6. A method for displaying images comprising the steps of:

(i) applying a first voltage to a surface of a fluorescent member;
(ii) applying a voltage pulse to wiring electrodes so as to cause emission of electrons from an electron emitting device;
(iii) applying a second voltage to modulating electrodes to control the emitted electrons, in either an ON state or an OFF state in accordance with information signals representing a line of an image to be displayed wherein the emitted electrons in the ON state impinge the fluorescent member; and
(iv) successively repeating the steps of (ii) through (iii) thereby forming a picture of an image on a display device;
wherein the display device comprises:
an electron-emitting device, comprising an insulating layer disposed between opposing electrodes on a surface of a planar substrate wherein said opposing electrodes are both situated on said surface of the planar substrate, and having fine particles arranged within said insulating layer in a dispersed state; wherein electrons are emitted by applying a voltage to said electrodes; and
a phosphor, wherein said phosphor emits light by a stimulation of the electrons emitted from said electron-emitting device.

7. A method for displaying images comprising the steps of:

(i) applying a first voltage to a surface of a fluorescent member;
(ii) applying a voltage pulse to wiring electrodes so as to cause emission of electrons from an electron emitting device;
(iii) applying a second voltage to modulating electrodes to control the emitted electrons, in either an ON state or an OFF state in accordance with information signals representing a line of an image to be displayed wherein the emitted electrons in the ON state impinge the fluorescent member; and
(iv) successively repeating the steps of (ii) through (iii) thereby forming a picture of an image on a display device;
wherein the display device comprises:
an electron-emitting device, comprising opposing electrodes formed on an insulating layer disposed on a planar substrate, and fine particles being dispersed within said insulating layer between said electrodes; and
a phosphor, wherein said phosphor emits light by a stimulation of the electrons emitted from said electron-emitting device.

8. A method for displaying images comprising the steps of:

(i) applying a first voltage to a surface of a fluorescent member;
(ii) applying a voltage pulse to wiring electrodes so as to cause emission of electrons from an electron emitting device;
(iii) applying a second voltage to modulating electrodes to control the emitted electrons, in either an ON state or an OFF state in accordance with information signals representing a line of an image to be displayed wherein the emitted electrons in the ON state impinge the fluorescent member; and
(iv) successively repeating the steps of (ii) through (iii) thereby forming a picture of an image on a display device;
wherein the display device comprises:
an electron-emitting device, comprising opposing electrodes having a predetermined spacing disposed on a surface of a planar substrate wherein said opposing electrodes are both situated on said surface of the planar substrate, with at least two kinds of fine particles of materials having different conductivities disposed between said predetermined spacing, wherein electrons are emitted by applying a voltage to said electrodes; and
a phosphor, wherein said phosphor emits light by a stimulation of the electrons emitted from said electron-emitting device.

9. A method for displaying images comprising the steps of:

(i) applying a first voltage to a surface of a fluorescent member;
(ii) applying a voltage pulse to wiring electrodes so as to cause emission of electrons from an electron emitting device;
(iii) applying a second voltage to modulating electrodes to control the emitted electrons, in either an ON state or an OFF state in accordance with information signals representing a line of an image to be displayed wherein the emitted electrons in the ON state impinge the fluorescent member; and
(iv) successively repeating the steps of (ii) through (iii) thereby forming a picture of an image on a display device;
wherein the display device comprises:
an electron-emitting device, comprising a semiconductor formed between opposing electrodes on a surface of a planar substrate, wherein said opposing electrodes are both situated on said surface of the planar substrate, and wherein fine particles are dispersed within said semiconductor layer or on said semiconductor layer; and
a phosphor, wherein said phosphor emits light by a stimulation of the electrons emitted from said electron-emitting device.

10. A method for displaying images comprising the steps of:

(i) applying a first voltage to a surface of a fluorescent member;
(ii) applying a voltage pulse to wiring electrodes so as to cause emission of electrons from an electron emitting device;
(iii) applying a second voltage to modulating electrodes to control the emitted electrons, in either an ON state or an OFF state in accordance with information signals representing a line of an image to be displayed wherein the emitted electrons in the ON state impinge the fluorescent member; and
(iv) successively repeating the steps of (ii) through (iii) thereby forming a picture of an image on a display device;
wherein the display device comprises:
an electron-emitting device, having opposing electrodes formed on a semiconductor layer on a planar substrate, wherein said opposing electrodes are both situated on an identical surface of the semiconductor layer, and wherein fine particles are dispersed within said semiconductor layer or on said semiconductor layer; and
a phosphor, wherein said phosphor emits light by a stimulation of the electrons emitted from said electron-emitting device.
Referenced Cited
U.S. Patent Documents
3015747 January 1962 Rosenberg
3278789 October 1966 Shroff
3663857 May 1972 Soellner et al.
3725731 April 1973 Kazan
3735186 May 1973 Klopfer et al.
4093562 June 6, 1978 Kishimoto
4303917 December 1, 1981 Kishino et al.
4325084 April 13, 1982 Van Gorkon et al.
Foreign Patent Documents
0073031 March 1983 EPX
1800952 July 1971 DEX
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2542349 July 1976 DEX
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Other references
  • M. Hartwell et al., "Strong Electron Emission From patterned Tin-indium Oxide Thin Films" Cambridge MA, pp. 519-521. M. Elinson et al., "The Emission of Hot Electrons and The Field Emissions of Electrons from Tin Oxide", Radio Engineering and Electron Physics.
Patent History
Patent number: 5872541
Type: Grant
Filed: Jun 7, 1995
Date of Patent: Feb 16, 1999
Assignee: Canon Kabushiki Kaisha (Tokyo)
Inventors: Seishiro Yoshioka (Hiratsuka), Ichiro Nomura (Yamato), Hidetoshi Suzuki (Atsugi), Toshihiko Takeda (Funabashi), Tetsuya Kaneko (Yokohama), Yoshikazu Banno (Atsugi), Kojiro Yokono (Yokohama)
Primary Examiner: Chanh Nguyen
Law Firm: Fitzpatrick, Cella, Harper & Scinto
Application Number: 8/487,559
Classifications
Current U.S. Class: 345/74; Electroluminescent (345/76)
International Classification: G09G 322;